ESTABLISHMENT OF PURE NEURONAL CULTURES FROM FETAL-RAT SPINAL-CORD AND PROLIFERATION OF THE NEURONAL PRECURSOR CELLS IN THE PRESENCE OF FIBROBLAST GROWTH-FACTOR

被引:48
作者
DELOULME, JC
BAUDIER, J
SENSENBRENNER, M
机构
[1] Laboratoire de Neurobiologie Ontogénique, Centre de Neurochimie, CNRS, Strasbourg
关键词
FIBROBLAST GROWTH FACTOR; PROLIFERATION; SPINAL CORD NEURONS; RAT;
D O I
10.1002/jnr.490290410
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
A primary culture system of nearly pure neuronal cells from 14-day-old fetal rat spinal cord has been developed by combining a preplating step, the use of a chemically defined serum-free medium, and borated polylysine-coated dishes that prevented the formation of cell aggregates. About 98% of the cells were found to be immunostained with neuron-specific enolase antibodies, confirming their neuronal nature. The cultures are composed essentially of a population of non-motoneurons and contain few motoneurons, characterized by their large size and multipolar aspect, the presence of acetylcholinesterase (AChE), and the intense immunoreaction for growth-associated protein GAP-43. Neuronal precursor cells are also present in these cultures and proliferate during the first 3 days. The addition of bovine brain basic fibroblast growth factor (bFGF) stimulates their proliferation over a period of 2 days, as determined by measurement of [I-125]iododeoxyuridine incorporation and by immunocytochemical reaction after bromodeoxyuridine incorporation into nuclei. The proliferating cells were characterized as neurons by immunostaining against neuron-specific enolase. Recombinant human bFGF and bovine brain acidic FGF (aFGF) exerted similar effects. Other growth factors, including epidermal growth factor (EGF), transforming growth factor beta-1 (TFG-beta-1), and thrombin, were without effect on the proliferative activity of these neuronal cells. bFGF has no effect on the survival of motoneurons and on the fiber outgrowth of the whole neuronal population. However, bFGF affects the development of bipolar AChE-positive neurons, probably belonging to the non-motoneuron population. The data indicate that bFGF and aFGF are mitogens for neuroblasts from rat spinal cord in culture and that bFGF influences the development of a subpopulation of spinal neurons that are AChE-positive.
引用
收藏
页码:499 / 509
页数:11
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[1]   AUTORADIOGRAPHIC LABELING OF SPINAL-CORD NEURONS WITH HIGH-AFFINITY CHOLINE UPTAKE IN CELL-CULTURE [J].
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BERG, DK .
DEVELOPMENTAL BIOLOGY, 1979, 72 (01) :1-14
[2]   ENRICHMENT OF SPINAL-CORD CELL-CULTURES WITH MOTONEURONS [J].
BERG, DK ;
FISCHBACH, GD .
JOURNAL OF CELL BIOLOGY, 1978, 77 (01) :83-98
[3]   EFFECTS OF ACIDIC AND BASIC FIBROBLAST GROWTH-FACTORS ON PROLIFERATION AND MATURATION OF CULTURED RAT OLIGODENDROCYTES [J].
BESNARD, F ;
PERRAUD, F ;
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LABOURDETTE, G .
INTERNATIONAL JOURNAL OF DEVELOPMENTAL NEUROSCIENCE, 1989, 7 (04) :401-409
[4]   VIMENTIN GFAP TRANSITION IN PRIMARY DISSOCIATED CULTURES OF RAT EMBRYO SPINAL-CORD [J].
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DAHL, D .
INTERNATIONAL JOURNAL OF DEVELOPMENTAL NEUROSCIENCE, 1989, 7 (04) :343-357
[5]   SCHWANN CELL-CONDITIONED MEDIUM SUPPORTS NEURITE OUTGROWTH AND SURVIVAL OF SPINAL-CORD NEURONS IN CULTURE [J].
BOSCH, EP ;
ASSOULINE, JG ;
PANTAZIS, NJ ;
LIM, R .
MUSCLE & NERVE, 1988, 11 (04) :324-330
[6]   SELECTIVE SURVIVAL OF NEURONS FROM CHICK-EMBRYO SENSORY GANGLIONIC DISSOCIATES UTILIZING SERUM-FREE SUPPLEMENTED MEDIUM [J].
BOTTENSTEIN, JE ;
SKAPER, SD ;
VARON, SS ;
SATO, GH .
EXPERIMENTAL CELL RESEARCH, 1980, 125 (01) :183-190
[8]   NEUROMODULIN (GAP43) - A NEURONAL PROTEIN-KINASE-C SUBSTRATE IS ALSO PRESENT IN 0-2A GLIAL-CELL LINEAGE - CHARACTERIZATION OF NEUROMODULIN IN SECONDARY CULTURES OF OLIGODENDROCYTES AND COMPARISON WITH THE NEURONAL ANTIGEN [J].
DELOULME, JC ;
JANET, T ;
AU, D ;
STORM, DR ;
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BAUDIER, J .
JOURNAL OF CELL BIOLOGY, 1990, 111 (04) :1559-1569
[9]   CULTURED RAT SPINAL-CORD NEURONS - INTERACTION WITH MOTOR NEURON DISEASE IMMUNOGLOBULINS [J].
DIGBY, J ;
HARRISON, R ;
JEHANLI, A ;
LUNT, GG ;
CLIFFORDROSE, F .
MUSCLE & NERVE, 1985, 8 (07) :595-605
[10]   DISTINCT NEUROTROPHIC FACTORS FROM SKELETAL-MUSCLE AND THE CENTRAL-NERVOUS-SYSTEM INTERACT SYNERGISTICALLY TO SUPPORT THE SURVIVAL OF CULTURED EMBRYONIC SPINAL MOTOR NEURONS [J].
DOHRMANN, U ;
EDGAR, D ;
THOENEN, H .
DEVELOPMENTAL BIOLOGY, 1987, 124 (01) :145-152